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A multiscale approach to modelling electrochemical processes occurring across the cell membrane with application to transmission of action potentials

机译:一种多尺度方法,用于模拟在整个细胞膜上发生的电化学过程,同时应用于动作电位的传递

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摘要

By application of matched asymptotic expansions, a simplified partial differential equation (PDE) model for the dynamic electrochemical processes occurring in the vicinity of a membrane, as ions selectively permeate across it, is formally derived from the Poisson–Nernst–Planck equations of electrochemistry. It is demonstrated that this simplified model reduces itself, in the limit of a long thin axon, to the cable equation used by Hodgkin and Huxley to describe the propagation of action potentials in the unmyelinated squid giant axon. The asymptotic reduction from the simplified PDE model to the cable equation leads to insights that are not otherwise apparent; these include an explanation of why the squid giant axon attains a diameter in the region of 1 mm. The simplified PDE model has more general application than the Hodgkin–Huxley cable equation and can, e.g. be used to describe action potential propagation in myelinated axons and neuronal cell bodies
机译:通过应用匹配的渐近展开,从离子的泊松-能斯特-普朗克方程正式推导了一个简化的偏微分方程(PDE)模型,该模型用于在膜附近发生的动态电化学过程,因为离子选择性地渗透穿过膜。结果表明,这种简化的模型在长而细的轴突的限制下,将自身简化为霍奇金和赫x黎用来描述动作电位在无髓鱿鱼巨轴突中传播的电缆方程。从简化的PDE模型到电缆方程的渐近简化导致洞察力不明显;这些内容解释了鱿鱼巨型轴突为何达到1毫米左右的直径。简化的PDE模型比Hodgkin–Huxley电缆方程式具有更广泛的应用,例如用于描述动作电位在髓鞘轴突和神经元细胞体中的传播

著录项

  • 作者

    Richardson, G.;

  • 作者单位
  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 en
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